Toride, Japan

Masae Fujisawa



Average Co-Inventor Count = 8.0

ph-index = 2

Forward Citations = 10(Granted Patents)


Company Filing History:


Years Active: 2007-2008

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2 patents (USPTO):Explore Patents

Title: Masae Fujisawa: Innovator in the Realm of Pharmaceuticals

Introduction: Masae Fujisawa is a notable inventor based in Toride, Japan, recognized for his contributions to the field of pharmaceuticals. With a total of two patents credited to his name, Fujisawa's work focuses on innovative compounds that show promise in medical applications.

Latest Patents: Masae Fujisawa's latest patents involve 7-phenylpyrazolopyridine compounds. These compounds are characterized by a specific chemical formula where R represents substituents such as methoxy, methylthio, and ethyl, among others. R and R' can each vary independently, being cyclopropylmethyl, (4-tetrahydropyranyl)methyl, and other configurations. Notably, two instances of R, R' may be Calkoxy, while the remaining one can be methoxymethyl or similar alternatives. These compounds have demonstrated excellent antagonism against the corticotropin-releasing factor receptor, highlighting their potential in therapeutic applications.

Career Highlights: Throughout his career, Masae Fujisawa has made significant strides in the pharmaceutical industry, notably working for Eisai Company, Limited, and Eisai R&D Management Co., Ltd. His role in these organizations has facilitated the development of groundbreaking medicinal compounds.

Collaborations: Fujisawa has collaborated with esteemed colleagues in his field, including Shigeki Hibi and Yorihisa Hoshino. These partnerships have contributed to the successful advancement of his research and development endeavors.

Conclusion: Masae Fujisawa stands out as a vital inventor in the pharmaceutical sector. His research on 7-phenylpyrazolopyridine compounds not only showcases his innovation but also his commitment to improving medical treatments. As the landscape of pharmaceuticals continues to evolve, Fujisawa's contributions remain influential and significant.

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